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Book

Silicon-Based Photonics

Book

Silicon-Based Photonics

DOI link for Silicon-Based Photonics

Silicon-Based Photonics book

Silicon-Based Photonics

DOI link for Silicon-Based Photonics

Silicon-Based Photonics book

ByErich Kasper, Jinzhong Yu
Edition 1st Edition
First Published 2020
eBook Published 19 November 2020
Pub. Location New York
Imprint Jenny Stanford Publishing
DOI https://doi.org/10.1201/9781315156514
Pages 352
eBook ISBN 9781315156514
Subjects Engineering & Technology, Physical Sciences
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Kasper, E., & Yu, J. (2020). Silicon-Based Photonics (1st ed.). Jenny Stanford Publishing. https://doi.org/10.1201/9781315156514

ABSTRACT

Silicon photonics has evolved rapidly as a research topic with enormous application potential. The high refractive index contrast of silicon-on-insulator (SOI) shows great promise for submicron waveguide structures suited for integration on the chip scale in the near-infrared region. Ge- and GeSn-Si heterostructures with different elastic strain levels already provide expansion of the spectral range, high-speed operation, efficient modulation and switching of optical signals, and enhanced light emission and lasing.

This book focuses on the integration of heterostructure devices with silicon photonics. The authors have attempted to merge a concise treatment of classical silicon photonics with a description of principles, prospects, challenges, and technical solution paths of adding silicon-based heterostructures. The book discusses the basics of heterostructure-based silicon photonics, system layouts, and key device components, keeping in mind the application background. Special focus is placed on SOI-based waveguide configurations and Ge- and GeSn-Si heterostructure devices for light detection, modulation, and light emission and lasing. The book also provides an overview of the technological and materials science challenges connected with integration on silicon. The first half of the book is mainly for readers who are interested in the topic because of its increasing importance in different fields, while the latter half covers different device structures for light emission, detection, modulation, extension of the wavelength beyond 1.6 μm, and lasing, as well as future challenges.

TABLE OF CONTENTS

chapter Chapter 1|7 pages

Introduction

chapter Chapter 2|11 pages

Band Structure and Optical Properties

chapter Chapter 3|28 pages

Planar Waveguides

chapter Chapter 4|45 pages

Microring Resonators

chapter Chapter 5|27 pages

Optical Couplers

chapter Chapter 6|22 pages

Photonic Crystals

chapter Chapter 7|21 pages

Slow Light in a Silicon-Based Waveguide

chapter Chapter 8|12 pages

Light Emitters

chapter Chapter 9|45 pages

Detectors

chapter Chapter 10|26 pages

Modulators

chapter Chapter 11|18 pages

Extension of the Wavelength Regime

chapter Chapter 12|48 pages

Laser

chapter Chapter 13|10 pages

Future Challenges

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